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DTSTART:20211031T030000
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RDATE:20221030T030000
RDATE:20231029T030000
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UID:www.bayceer.uni-bayreuth.de-bayceer-t162785id
DTSTAMP:20260815T013545Z
DESCRIPTION:The world's soils are the largest terrestrial reservoir of orga
 nic carbon (C). Feedbacks between soil organic C and atmospheric CO2 will 
 determine the future trajectory of climate change. However\, predictions a
 re largely uncertain because we still lack fundamental knowledge of the co
 mplex interplay between plants and microorganisms and its influence on C t
 urnover. Most terrestrial plants live in symbiosis with mycorrhizal fungi.
  Previous work suggests that on a global scale soil C stocks are linked to
  the distribution of arbuscular mycorrhizal (AM) or ectomycorrhizal (ECM) 
 plants. To date\, it is not clear whether there is a causal relationship b
 etween mycorrhizal type and soil C storage. Answering this key question re
 quires novel concepts that consider the mechanistic link between short-ter
 m C fluxes from plants to mycorrhizal fungi and C storage as an emerging e
 cosystem property. In my presentation\, I will give an overview of ongoing
  and future research on the dynamics of C input by mycorrhizal fungi to so
 il\, their effects on C turnover and their implications for C storage in e
 cosystems dominated by AM or ECM trees.\n
DTSTART;TZID=Europe/Berlin:20220505T121500
DTEND;TZID=Europe/Berlin:20220505T134500
LOCATION:H8/GEO
SUMMARY:Prof. Dr. Johanna Pausch\, Agroecology\, BayCEER\, UBT (Homepage): 
 Tenure track evaluation: Mycorrhizal Fungi and Soil Carbon Storage
TRANSP:TRANSPARENT
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